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Comparative analysis of properties of channels of deuteron and tritium production in 16Op collisions at a projectile momentum of 3.25 GeV/c per nucleon

Khusniddin K. OlimovPhysical Technical Institute, Scientific Production Association Physics-Sun, Uzbek Academy of Sciences, Bodomzor Yoli str. 2b, Tashkent, 100084, Republic of UzbekistanВ. В. ГлаголевJoint Institute for Nuclear Research, Dubna, Moscow oblast, 141980, RussiaK. G. GulamovPhysical Technical Institute, Scientific Production Association Physics-Sun, Uzbek Academy of Sciences, Bodomzor Yoli str. 2b, Tashkent, 100084, Republic of UzbekistanA. KurbanovPhysical Technical Institute, Scientific Production Association Physics-Sun, Uzbek Academy of Sciences, Bodomzor Yoli str. 2b, Tashkent, 100084, Republic of UzbekistanS. L. LutpullaevPhysical Technical Institute, Scientific Production Association Physics-Sun, Uzbek Academy of Sciences, Bodomzor Yoli str. 2b, Tashkent, 100084, Republic of UzbekistanAlisher K. OlimovPhysical Technical Institute, Scientific Production Association Physics-Sun, Uzbek Academy of Sciences, Bodomzor Yoli str. 2b, Tashkent, 100084, Republic of UzbekistanV. I. PetrovPhysical Technical Institute, Scientific Production Association Physics-Sun, Uzbek Academy of Sciences, Bodomzor Yoli str. 2b, Tashkent, 100084, Republic of UzbekistanA.A. YuldashevPhysical Technical Institute, Scientific Production Association Physics-Sun, Uzbek Academy of Sciences, Bodomzor Yoli str. 2b, Tashkent, 100084, Republic of Uzbekistan
Physics of Atomic Nucleijournal2014en
ABI

Аннотация

The results of a comparative analysis of channels involving the inclusive production of deuterons and tritons in 16Op collisions at a projectile momentum of 3.25 GeV/c per nucleon are presented. The mechanisms governing proton, deuteron, and triton production in the fragmentation of oxygen nuclei are found to be independent. It is shown that the observed proton-multiplicity correlations are associated predominantly with the character of the primary event of a proton-nucleon collision in 16Op interactions. It is found that, in reactions involving triton production, the contributions of processes leading to an increase in the mean proton multiplicity (n → p + π − and np → pn) and processes leading to its decrease (p → n + π +) compensate each other.

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